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    • 4. 发明授权
    • Knocking control apparatus and knocking control method for internal combustion engine
    • 内燃机爆震控制装置及爆震控制方法
    • US07040285B2
    • 2006-05-09
    • US11121050
    • 2005-05-04
    • Toshikazu KatoYuji Miyanoo
    • Toshikazu KatoYuji Miyanoo
    • F02P5/152F01L1/34
    • F02D41/1498F01L13/0015F02D35/027F02D2041/001
    • A knocking control apparatus for an internal combustion engine, which is applied to an internal combustion engine including a variable valve mechanism that can vary a valve characteristic of at least one of an intake valve and an exhaust valve, and which changes an engine control amount based on a result of a knocking determination as to whether knocking occurs, includes a controller which performs the knocking determination as to whether knocking occurs based on an output signal from a knock sensor that detects a vibration occurring in the internal combustion engine, and which changes a mode of the knocking determination according to a change in a combustion state of an air-fuel mixture, the change being caused by a change in the valve characteristic.
    • 一种用于内燃机的爆震控制装置,其被应用于包括可变阀机构的内燃机,所述可变气门机构能够改变进气门和排气门中的至少一个的阀特性,并且基于发动机控制量改变 根据爆震确定是否发生爆震的结果,包括控制器,该控制器基于检测内燃机中发生的振动的爆震传感器的输出信号,进行是否发生爆震的爆震判定, 根据空气 - 燃料混合物的燃烧状态的变化来确定爆震的模式,该变化是由阀特性的变化引起的。
    • 5. 发明申请
    • Vehicle control device
    • 车辆控制装置
    • US20100241322A1
    • 2010-09-23
    • US12309280
    • 2007-07-31
    • Yuji Miyanoo
    • Yuji Miyanoo
    • B60W10/10B60W30/18G06F19/00
    • F16H61/66272F16H61/66259F16H2061/66277F16H2061/66286Y10T477/619
    • A vehicle includes an engine-driven oil pump, which is driven by the rotation of an output shaft of an internal combustion engine, a variable valve timing apparatus, which operates based on hydraulic pressure supply provided by the oil pump, and a continuously variable transmission capable of continuously varying the transmission gear ratio. An electronic control unit sets the transmission gear ratio of the continuously variable transmission based on the operating state of the vehicle. The electronic control unit changes the transmission gear ratio, which is set based on the operating state of the vehicle, in such a manner that the engine speed is increased when the hydraulic pressure supply via the hydraulic oil provided from the oil pump to the variable valve timing apparatus is low.
    • 车辆包括由内燃机的输出轴的旋转驱动的发动机驱动的油泵,基于由油泵提供的液压供给而动作的可变气门正时装置,以及无级变速器 能够连续地改变传动比。 电子控制单元基于车辆的运行状态设定无级变速器的变速比。 电子控制单元根据车辆的运转状态改变传动齿轮比,使得当通过从油泵向可变阀提供的液压油的液压供给时,发动机转速增加 定时装置低。
    • 10. 发明授权
    • Valve performance controller for internal combustion engine
    • 内燃机阀门性能控制器
    • US08055430B2
    • 2011-11-08
    • US12514605
    • 2007-12-19
    • Yuji Miyanoo
    • Yuji Miyanoo
    • F01L9/02F01L1/34
    • F01L1/3442F01L2001/34453F01L2001/34469F01L2800/05F02D13/02F02D41/0002F02D41/2422F02D2041/001F02D2200/023Y02T10/18Y02T10/42
    • A valve characteristic controller including an oil pump, a valve timing varying mechanism, and a valve timing control unit is disclosed. The valve timing varying mechanism varies the valve characteristic value of intake valves in an engine based on the hydraulic pressure of hydraulic oil supplied from the oil pump. The valve timing control unit includes a storage and a detector. The storage stores computation maps used to calculate a target value for the valve characteristic value based on a plurality of engine control values. The detector detects the temperature of the hydraulic oil. The computation maps include a first map and a second map. The varying amount of the valve characteristic amount corresponding to a change in the engine control value in a low speed range of the engine speed is set to be smaller in the second map than the first map. The valve timing control unit switches the computation maps from the first map to the second map when the detected temperature of the hydraulic oil is relatively high.
    • 公开了一种包括油泵,气门正时变化机构和气门正时控制单元的阀门特征控制器。 气门正时变化机构基于从油泵供给的液压油的液压来改变发动机的进气门的阀特性值。 气门正时控制单元包括存储器和检测器。 存储器存储用于基于多个引擎控制值来计算用于阀特性值的目标值的计算图。 检测器检测液压油的温度。 计算图包括第一地图和第二地图。 与第一地图相比,在第二地图中将与发动机转速的低速范围内的发动机控制值的变化对应的阀特性量的变化量设定得较小。 当检测到的液压油的温度较高时,气门正时控制单元将计算图从第一地图切换到第二地图。